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Adaptive GaN gate driver with inductive feed-forward for highest efficiency (AGaNDrive)

Adaptive GaN gate driver with inductive feed-forward for highest efficiency (AGaNDrive)
具有电感前馈的自适应 GaN 栅极驱动器,可实现最高效率 (AGaNDrive)
批准号:
462842206
负责人:
Professor Dr. Anton Grabmaier, since 5/2022
金额:
$0.0万
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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中文摘要
翻译
在AGaNDrive中,我们开发和研究了自适应GaN-HEMT栅极驱动概念,以实现低振铃和可控过冲的快速开关。在电力电子系统中,这将允许具有快速开关的节能系统,从而在不牺牲EMI性能和不对GaN-HEMT施加额外压力的情况下,实现小而轻的无源元件。栅极驱动器将确保在广泛的操作条件下实现这一点,并且它将使自己适应不同的设备。我们的栅极驱动器方法将确保具有电感前馈的快速开关和低过冲和振铃的开关,并能适应不同的工作条件和器件,因为开关源具有可控的电压和输出电阻。工作计划将专注于开发一种有源栅极驱动器,在栅极驱动器IC的输出级和GaN HEMT之间具有电感前馈网络以实现快速开关,并通过衰减网络进行扩展以减少振铃和过冲。该共同项目提案的主要目标是为闭环栅极驱动概念找到有源-无源组合解决方案,这些解决方案弥补了制造公差、老化和温度相关性等方面的影响,以便在实现最低GaN HEMT开关损耗的同时仍能获得可接受的EMI性能。将研究有源栅极驱动器反馈概念,以实现电感前馈结构和开关源支持的有源二次侧操作。由于环境和负载条件可以在很大范围内变化,直接反馈策略可能会受到高度复杂性的影响,可能无法满足所有这些条件。为此,将实现一种可配置的基于暂态算法的开关源驱动强度控制。一方面,这可以用来适应不同的GaN器件或不同的负载条件。另一方面,这将允许基于算法的自动适应不断变化的工作点条件。系统集成和实验评估将在具有同步整流的典型DC/DC转换器应用中进行详细的表征和样本实现。
英文摘要
In AGaNDrive we develop and investigate adaptive GaN-HEMT gate driving concepts for very fast switching with low ringing and controlled overshoot. In a power electronic system, this will allow energy-efficient systems with fast switching and thus small and light-weight passive components without sacrificing EMI performance and without imposing additional stress on the GaN-HEMTs. The gate driver will ensure that this is achieved for a wide range of operating conditions and it will adapt itself to different devices. Our gate driver approach will ensure rapid switching with inductive feed-forward and switching with low overshoot and ringing as well as adaption to different operating conditions and devices due to switched sources with controllable voltage and output resistances.The work programme will focus on the development of an active gate driver with an inductive feed-forward network between the output stage of the gate driver IC and the GaN HEMT for fast switching, extended by damping networks to reduce ringing and overshoot. Main objectives of this common project proposal are to find combined active-passive solutions for closed loop gate driving concepts, which compensate amongst others for manufacturing tolerances, ageing and temperature dependency in order to achieve lowest GaN HEMT switching losses while still achieving acceptable EMI performance. Active gate driver feedback concepts will be investigated, enabling active secondary side operation of the inductive feed-forward structure and a switched sources support. Since environmental and load conditions can vary in a wide range, direct feedback strategies might suffer from high complexity and may fail to fulfil all these conditions. For this reason, a configurable transient algorithm-based switched sources driving strength control will be implemented. On one hand, this can be used to adapt for different GaN devices or different load conditions. On the other hand, this will allow to automatically, algorithm-based, adapt to changing operating point conditions. System integration and experimental evaluation will take place for detailed characterization and sample implementation in a typical DC/DC converter application with synchronous rectification.
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垂直型GaN肖特基势垒二极管研究
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  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2026
  • 负责人:
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  • 依托单位:
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  • 批准号:
  • 项目类别:
    省市级项目
  • 资助金额:
    10.0万元
  • 批准年份:
    2025
  • 负责人:
    戴厚富
  • 依托单位: